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首页> 外文期刊>Trends in Ecology & Evolution >Probabilistic Analysis of Commutation Failure in LCC-HVDC System Considering the CFPREV and the Initial Fault Voltage Angle
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Probabilistic Analysis of Commutation Failure in LCC-HVDC System Considering the CFPREV and the Initial Fault Voltage Angle

机译:考虑CFPREV和初始故障电压角的LCC-HVDC系统换向故障的概率分析

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摘要

This paper investigates the in-depth mechanism of commutation failure for a line-commuted converter-based high-voltage direct current (LCC-HVDC) system. The commutation failure prevention control (CFPREV) and the initial fault voltage angle (IFVA) are considered from the view of the voltage-time area (VTA) in the analysis. It is revealed that the IFVA is among the dominant factors for commutation failures when the voltage drop of the inverter bus is relatively small, and CFPREV further intensifies the impact of the IFVA on commutation failures, while the fluctuation of the direct current plays a dominant role in commutation failures under a greater voltage reduction at the inverter bus. A quantitative division of the severity of AC faults is proposed to determine dominant factors for commutation failures. The relationship between the chance of commutation failures to occur and the IFVA is built, and the method used for computing probability of commutation failures is proposed. The influence of the dynamic of CFPREV output on our research is studied. Simulations based on a typical monopole LCC-HVDC system using PSCAD/EMTDC software are conducted to verify the correctness of the theoretic analysis and the effectiveness of the proposed computing methods.
机译:本文研究了基于线路通信转换器的高压直流(LCC-HVDC)系统的深度换向功能。从分析中的电压时区域(VTA)的视图,考虑了换向故障预防控制(CFPREV)和初始故障电压角(IFVA)。据透露,IFVA是当逆变器总线的电压降相对较小时的换向故障的主导因素之一,并且CFPrev进一步加剧了IFVA对换向故障的影响,而直流的波动扮演主导作用在换向故障下在逆变器总线上更大的电压降低。提出了AC断层严重程度的定量分裂,以确定换向失败的主要因素。建立了发生换向故障和IFVA之间的关系,并提出了用于计算换向故障概率的方法。研究了CFPREV输出动态对我们研究的影响。进行了使用PSCAD / EMTDC软件的典型单极LCC-HVDC系统的模拟,以验证理论分析的正确性和所提出的计算方法的有效性。

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